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探讨神经甾体孕烯醇酮作为内源性 1 型大麻素受体 (CB1R) 活性和功能调节剂的新视角。

New perspectives on the role of the neurosteroid pregnenolone as an endogenous regulator of type-1 cannabinoid receptor (CB1R) activity and function.

机构信息

INSERM U1215, Neurocentre Magendie, Group "Physiopathology and Therapeutic Approaches of Stress-Related Disease", Bordeaux, France.

University of Bordeaux, Bordeaux, France.

出版信息

J Neuroendocrinol. 2022 Feb;34(2):e13034. doi: 10.1111/jne.13034. Epub 2021 Sep 6.

Abstract

Pregnenolone is a steroid with specific characteristics, being the first steroid to be synthesised from cholesterol at all sites of steroidogenesis, including the brain. For many years, pregnenolone was defined as an inactive precursor of all steroids because no specific target had been discovered. However, over the last decade, it has become a steroid of interest because it has been recognised as being a biomarker for brain-related disorders through the development of metabolomic approaches and advanced analytical methods. In addition, physiological roles for pregnenolone emerged when specific targets were discovered. In this review, we highlight the discovery of the selective interaction of pregnenolone with the type-1 cannabinoid receptor (CB1R). After describing the specific characteristic of CB1Rs, we discuss the newly discovered mechanisms of their regulation by pregnenolone. In particular, we describe the action of pregnenolone as a negative allosteric modulator and a specific signalling inhibitor of the CB1R. These particular characteristics of pregnenolone provide a great strategic opportunity for therapeutic development in CB1-related disorders. Finally, we outline new perspectives using innovative genetic tools for the discovery of original regulatory mechanisms of pregnenolone on CB1-related functions.

摘要

孕烯醇酮是一种具有特定特征的甾体,是所有甾体生物合成部位(包括大脑)中第一个从胆固醇合成的甾体。多年来,孕烯醇酮被定义为所有甾体的无活性前体,因为尚未发现特定的靶标。然而,在过去十年中,由于通过代谢组学方法和先进的分析方法认识到它是与大脑相关疾病的生物标志物,因此孕烯醇酮成为一种具有研究意义的甾体。此外,当发现特定的靶标时,孕烯醇酮的生理作用也显现出来。在这篇综述中,我们强调了孕烯醇酮与 1 型大麻素受体(CB1R)选择性相互作用的发现。在描述了 CB1R 的特异性特征之后,我们讨论了孕烯醇酮对其调节的新发现机制。特别是,我们描述了孕烯醇酮作为 CB1R 的负变构调节剂和特定信号抑制剂的作用。孕烯醇酮的这些特殊特性为治疗与 CB1 相关的疾病提供了巨大的战略机会。最后,我们使用创新的遗传工具概述了新的研究视角,以发现孕烯醇酮对 CB1 相关功能的原始调节机制。

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